Lara Estroff

Lara Estroff

Cornell University

H-index: 47

North America-United States

About Lara Estroff

Lara Estroff, With an exceptional h-index of 47 and a recent h-index of 32 (since 2020), a distinguished researcher at Cornell University, specializes in the field of biomineralization, crystal growth, pathological mineralization.

His recent articles reflect a diverse array of research interests and contributions to the field:

Collagen Mineralization Decreases Nk Cell‐Mediated Cytotoxicity of Breast Cancer Cells via Increased Glycocalyx Thickness

Biomineralogical signatures of breast microcalcifications

Removal of GAGs Regulates Mechanical Properties, Collagen Fiber Formation, and Alignment in Tissue Engineered Meniscus

Bone-matrix mineralization dampens integrin-mediated mechanosignalling and metastatic progression in breast cancer

Triblock Terpolymer Thin Film Nanocomposites Enabling Two-Color Optical Super-Resolution Microscopy

Biofunctional matrix models reveal mineral-dependent mechanoregulation of bone metastatic breast cancer

The Mesoscale Order of Nacreous Pearls

Discover Materials

Lara Estroff Information

University

Position

___

Citations(all)

20289

Citations(since 2020)

5755

Cited By

16966

hIndex(all)

47

hIndex(since 2020)

32

i10Index(all)

88

i10Index(since 2020)

72

Email

University Profile Page

Cornell University

Google Scholar

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Lara Estroff Skills & Research Interests

biomineralization

crystal growth

pathological mineralization

Top articles of Lara Estroff

Title

Journal

Author(s)

Publication Date

Collagen Mineralization Decreases Nk Cell‐Mediated Cytotoxicity of Breast Cancer Cells via Increased Glycocalyx Thickness

Advanced Materials

Sangwoo Park

Siyoung Choi

Adrian A Shimpi

Lara A Estroff

Claudia Fischbach

...

2024/1/27

Biomineralogical signatures of breast microcalcifications

Science Advances

Jennie AMR Kunitake

Daniel Sudilovsky

Lynn M Johnson

Hyun-Chae Loh

Siyoung Choi

...

2023/2/22

Removal of GAGs Regulates Mechanical Properties, Collagen Fiber Formation, and Alignment in Tissue Engineered Meniscus

ACS Biomaterials Science & Engineering

Serafina G Lopez

Jongkil Kim

Lara A Estroff

Lawrence J Bonassar

2023/2/21

Bone-matrix mineralization dampens integrin-mediated mechanosignalling and metastatic progression in breast cancer

Nature Biomedical Engineering

Siyoung Choi

Matthew A Whitman

Adrian A Shimpi

Nicole D Sempertegui

Aaron E Chiou

...

2023/8/7

Triblock Terpolymer Thin Film Nanocomposites Enabling Two-Color Optical Super-Resolution Microscopy

Macromolecules

Wennie Yun Lee

Dana V Chapman

Fei Yu

William RT Tait

R Paxton Thedford

...

2022/10/17

Biofunctional matrix models reveal mineral-dependent mechanoregulation of bone metastatic breast cancer

bioRxiv

Siyoung Choi

Matthew A Whitman

Adrian A Shimpi

Aaron Chiou

Joseph E Druso

...

2022/1/1

The Mesoscale Order of Nacreous Pearls

APS March Meeting Abstracts

Robert Hovden

Jiseok Gim

Alden Koch

Laura Otter

Benjamin Savitzky

...

2022

Discover Materials

Sort

Júlia Chaumel

María Marsal

Adrián Gómez‑Sánchez

Michael Blumer

Emilio J Gualda

...

2021

Fluorescent silica nanoparticles to label metastatic tumor cells in mineralized bone microenvironments

Small

Aaron E Chiou

Joshua A Hinckley

Rupal Khaitan

Neta Varsano

Jonathan Wang

...

2021/4

The role of organic matrices in biomineralization

Nils Kröger

Eike Brunner

Lara Estroff

Frédéric Marin

2021/12

The Mesoscale Crystallinity of Nacreous Pearls

arXiv preprint arXiv:2103.05037

Jiseok Gim

Alden Koch

Laura M Otter

Benjamin H Savitzky

Sveinung Erland

...

2021/3/8

Non-destructive spatial mapping of glycosaminoglycan loss in native and degraded articular cartilage using confocal raman microspectroscopy

Frontiers in Bioengineering and Biotechnology

Tianyu Gao

Alexander J Boys

Crystal Zhao

Kiara Chan

Lara A Estroff

...

2021/10/28

Forming anisotropic crystal composites: assessing the mechanical translation of gel network anisotropy to calcite crystal form

Journal of the American Chemical Society

Damian Palin

Robert W Style

Jure Zlopaša

Jonathan J Petrozzini

Mark A Pfeifer

...

2021/3/1

Patternable Mesoporous Thin Film Quantum Materials via Block Copolymer Self-Assembly: An Emergent Technology?

ACS Applied Materials & Interfaces

Fei Yu

R Paxton Thedford

Konrad R Hedderick

Guillaume Freychet

Mikhail Zhernenkov

...

2021/7/19

Combining TGF-β1 and mechanical anchoring to enhance collagen fiber formation and alignment in tissue-engineered menisci

ACS Biomaterials Science & Engineering

Jongkil Kim

Alexander J Boys

Lara A Estroff

Lawrence J Bonassar

2021/2/19

Orthogonal Nanoprobes Enabling Two-Color Optical Super-Resolution Microscopy Imaging of the Two Domains of Diblock Copolymer Thin Film Nanocomposites

Chemistry of Materials

Dana V Chapman

Joshua A Hinckley

Jacob A Erstling

Lara A Estroff

Ulrich B Wiesner

2021/6/22

Multiple pathways for pathological calcification in the human body

Netta Vidavsky

Jennie AMR Kunitake

Lara A Estroff

2021/2

Surface-induced coacervation facilitates localized precipitation of mineral precursors from dilute solutions

Chemistry of materials

Leilah Krounbi

Konrad Hedderick

Zohar Eyal

Lior Aram

Eyal Shimoni

...

2021/5/7

Crystals of benzamide, the first polymorphous molecular compound, are helicoidal

Angewandte Chemie

Alexander G Shtukenberg

Ran Drori

Elena V Sturm

Netta Vidavsky

Asaf Haddad

...

2020/8/17

Mineral distribution spatially patterns bone marrow stromal cell behavior on monolithic bone scaffolds

Acta biomaterialia

Hao Zhou

Alexander J Boys

Jordan B Harrod

Lawrence J Bonassar

Lara A Estroff

2020/8/1

See List of Professors in Lara Estroff University(Cornell University)

Co-Authors

H-index: 167
Henry J Snaith

Henry J Snaith

University of Oxford

H-index: 131
Steve Weiner

Steve Weiner

Weizmann Institute of Science

H-index: 119
David A Muller

David A Muller

Cornell University

H-index: 116
Ralph Nuzzo

Ralph Nuzzo

University of Illinois at Urbana-Champaign

H-index: 92
Ulrich Wiesner

Ulrich Wiesner

Cornell University

H-index: 83
Sol M. Gruner

Sol M. Gruner

Cornell University

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